Method for recycling waste thermoplastic materials and using this recycled thermoplastic in composite material production
This invention is related to a method for production of high strength and low cost thermoplastic composite materials by processing and treating waste plastic materials with some minerals. The object of the invention is to embody a recycling method wherein it contains high amounts of additives and therefore composite materials with high strength properties are obtained. Another object of the invention is to embody a recycling method wherein high amounts of additives are used in the production and the machines used in the production are not damaged.
1. A method for recycling waste plastic materials and using this recycled plastic in composite material production, comprises the steps of:
Releasing a number of types of compressed thermoplastic waste materials by feeding into a bale opening machine;
Feeding the waste plastic materials into a separation unit and in there separation from rocks, earth, sand and other coarse foreign materials;
Feeding the waste plastic material into a cutting machine, cutting the waste plastic material into small pieces through high speed blades and at the same time washing by injecting water mm the machine;
Feeding the waste plastic materials cut into small pieces to a muddy water separation machine and separation of a slimed material from muddy water by centrifugal forces;
Transferring the waste plastic material into a pool filled with water, rinsing in there and at the same time precipitation of sand and other heavy materials that may have left on it;
Transferring the waste plastic material into an organic contamination separation machine and here cleaning of oil and other organic foreign materials on the waste plastic material that can not be removed in the previous processes by centrifugal forces;
Transferring the waste plastic material to a water separation machine and there separating the water and moisture on the waste plastic material by centrifugal forces;
Storing the waste plastic material by transferring to storage silos;
Transferring the waste plastic material into a drying machine and here drying the waste plastic material by heating and at the same time powdering it by crinkling for easy feeding to machines in future processes;
Storing the dried and crinkled waste plastic material by transferring to storage silos;
Transferring the waste plastic material to a horizontal reactor;
Heating the waste plastic material in the horizontal reactor until it melts under pressure up to 350° C. temperature;
Adding a painter and compatibilizer chemical materials to the waste plastic material heated in the horizontal reactor through a side feeding unit;
Adding mineral materials, through another side feeding unit in the horizontal reactor, to the melted waste plastic material in which the painter and the compatibilizer chemical materials have been added;
Further heating and mixing the melted waste plastic material with additives to form a melted composite material;
Immediately pouring the melted composite material free flowing from the horizontal reactor into independent detached molds before it cools down and cooling under pressure by compression inside the independent detached molds by means of individual hydraulic presses.